Decentralized Anonymous IoT Data Sharing with Key-Private Proxy Re-Encryption

Esra Günsay, Oguz Yayla
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Abstract

Secure and scalable data sharing is one of the main concerns of the Internet of Things (IoT) ecosystem. In this paper, we introduce a novel blockchain-based data-sharing construction designed to ensure full anonymity for both the users and the data. To share the encrypted IoT data stored on the cloud, users generate tokens, prove their ownership using zk-SNARKs, and target the destination address anonymously. To tackle the privacy concerns arising from uploading the data to the cloud, we use key-private re-encryption and share only the necessary information with the proxy. As the first time in the literature, we have integrated a token-based blockchain and a key private proxy re-encryption to achieve a fully anonymous data sharing scheme. Furthermore, we provide security proof of our proposed scheme is secure against existential forgery under chosen-plaintext attacks, under eDBDH assumption in the random oracle model.
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利用密钥-私有代理再加密实现分散式匿名物联网数据共享
安全、可扩展的数据共享是物联网(IoT)生态系统的主要关注点之一。在本文中,我们介绍了一种新颖的基于区块链的数据共享结构,旨在确保用户和数据的完全匿名性。为了共享存储在云端的加密物联网数据,用户生成代币,使用 zk-SNARK 证明其所有权,并匿名发送目标地址。为了解决将数据上传到云端所产生的隐私问题,我们使用密钥私有再加密,只与代理分享必要的信息。在文献中,我们首次集成了基于代币的区块链和密钥私有代理重加密,从而实现了完全匿名的数据共享方案。此外,我们还提供了安全证明,证明我们提出的方案在随机甲骨文模型中的 eDBDH 假设下,可以抵御选择明文攻击下的存在性伪造。
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